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1.
刘梦洋 《分子催化》2019,33(6):412-419
采用蒸发自组装法制备铝硼复合氧化物((AlxBy)2O3),真空络合浸渍法制备PtSn双金属催化剂,并应用于丙烷脱氢制丙烯。采用N2物理吸附、SEM、X射线粉末衍射、H2-TPR、NH3-TPD和TG对催化剂进行表征。掺入B可大幅增加载体的总酸量和酸中心密度,降低酸强度。当B掺入量为10%时,Cat-A0.9B0.1的总酸量是Cat-AB0总酸量的2.45倍,且只有弱酸中心。当B掺入量为50%时,Cat-A0.5B0.5的酸中心密度是Cat-AB0的4.3倍。以铝硼复合氧化物负载的催化剂均优于纯氧化铝负载的催化剂,催化剂的脱氢活性和稳定性与载体的硼铝摩尔比之间存在如下规律:A0.9B0.1>A0.7B0.3>A0.5B0.5>AB0。 关键词:铝硼复合氧化物;PtSn/ (AlxBy)2O3催化剂;丙烷脱氢  相似文献   

2.
负载PtSn金属助剂的镁铝水滑石上的丙烷脱氢反应研究   总被引:2,自引:2,他引:0  
我们研究了以镁铝水滑石作为载体,利用水滑石层间阴离子的可交换性,负载活性金属铂和锡的丙烷脱氢反应.在镁铝水滑石载体中加入Ga能够影响丙烷脱氢活性,当镓的含量为1%时催化剂丙烷脱氢反应活性最高,反应初始时,丙烷转化率为46.5%,反应2 h后,丙烷转化率仍有37.5%.当以Mg(Ga)(Al)O-1%为载体时,考察了不同H_2/C_3H_8摩尔比对丙烷脱氢活性的影响,结果表明当H_2/C_3H_8摩尔比为0.5∶1时,丙烷脱氢反应具有最佳的反应活性,即当在原料气中加入H_2时,能够使得丙烷脱氢的转化率大幅度提升,且选择性也有所提升.烷烃脱氢是一个吸热反应,同时考察了温度对烷烃脱氢反应性能影响,结果表明温度越高,丙烷脱氢反应具有更高的转化率.对催化剂进行长时间寿命实验考察,发现当反应经过40 h后,丙烷的转化率仍有23.5%,说明Pt Sn-Mg(Ga)(Al)O-1%催化剂具有较好的稳定性.  相似文献   

3.
ZrO_2-Al_2O_3复合氧化物的合成及其性能研究   总被引:1,自引:0,他引:1  
采用表面活性剂改性的沉淀法合成了系列掺杂钇、镧、钡的氧化锆铝复合氧化物。通过XRD、XRF、低温N2吸附和CO脉冲化学吸附等手段考察了表面活性剂、助剂、焙烧温度对复合材料结构、孔结构以及负载0.5%铑催化剂的分散性能等的影响。研究表明:与采用常规沉淀法合成的氧化锆铝复合氧化物相比,添加表面活性剂合成的样品具有更大的比表面积、孔容和适合的孔径分布。分别或同时掺杂La、Ba、Y合成的氧化锆铝复合氧化物都能抑制氧化铝的α相变,提高复合材料和催化剂表面金属Rh的高温抗烧结能力,特别是同时掺杂La、Ba、Y合成的Rh/LBYZA样品经1100℃4h焙烧后仍有17.82%的金属分散度。以LBYZA为载体制备的新鲜催化剂(600℃4h焙烧样品)在CO选择还原NO反应中NO和CO的起燃温度分别为240、243℃,完全燃烧温度分别为273、280℃,表现出较高的催化活性。  相似文献   

4.
Ga2O3催化剂上CO2气氛中丙烷脱氢反应的研究   总被引:4,自引:0,他引:4  
考察了Ga2O3对于丙烷脱氢和CO2气氛脱氢反应的催化性能.结果表明,Ga2O3具有较高的催化活性,其性能优于传统的Cr2O3脱氢催化剂.催化反应可能经过了一个丙烷异裂的过程,其中CO2是通过逆水煤气反应和Boudouard反应来促进催化剂性能的,在高于823K时该促进作用更为明显.催化剂的催化活性和其表面酸密度密切相关,在Ga2O3结构中,四配位Ga3+是其酸位的来源,并通过质子与氧化物的共同作用促进反应进行.催化剂的失活是由于表面的积碳和活性氧的消耗共同造成的.同时还对Ga2O3作为丙烷脱氢反应的催化剂的催化反应机理进行了初步探讨.  相似文献   

5.
采用聚合羟基复合阳离子合成交联蒙脱土Al-Ce-PILC, 并分别用NH4NO3和(NH4)2SO4处理后, 将其作为载体, 采用浸渍法制备了应用于C3H6选择性催化还原NO反应的铜基交联黏土催化剂Cu/Al-Ce-PILC. 用Py-IR, IR和DSC等表征技术研究了不同处理方式对Al-Ce-PILC的结构、 酸性和催化剂活性的影响. 结果表明, 未经处理的Al-Ce-PILC中同时存在L酸和B酸, 以L酸为主, Cu/Al-Ce-PILC上NO的最大转化率仅为18。5%; 用NH4NO3处理提高了L酸量, NO转化率降低; 而用(NH4)2SO4处理改变了Al-Ce-PILC的酸性结构, 增大了B酸量, 并形成了超强酸中心, 催化剂上NO转化率显著提高, 在350 ℃时达最大值50.2%. B酸对于Cu/Al-Ce-PILC上NO的还原是必要的, 它有利于C3H6吸附并适度氧化为活性中间物种, 其酸量和酸强度的增加是催化剂活性改善的主要原因.  相似文献   

6.
以九水合硝酸铝(Al(NO33·9H2O)与正硅酸乙酯(TEOS)为前驱盐,采用溶胶-凝胶法制备一系列不同Al2O3含量的SiO2-Al2O3复合氧化物,并通过浸渍硝酸氧锆引入ZrO2,制备ZrO2/SiO2-Al2O3复合氧化物催化剂,考察催化剂在肉桂醛(CAL)MPV转移加氢中的催化性能,并结合N2物理吸附、X射线粉末衍射(XRD)、傅里叶变换红外光谱(FTIR)、NH3-程度升温脱附(NH3-TPD)、Py-原位红外(Py-IR)等技术,研究催化剂结构、织构以及表面性质与其催化性能间的构效关系.研究表明,所制备的催化剂均以L酸为主,并含有少量B酸中心,这使得加氢产物以肉桂醇(COL)为主,并含有少量1-苯丙烯-2-丙基醚(CPE).Al2O3含量不仅影响催化剂表面的酸中心数量,而且对催化剂的织构参数有较大影响.随Al2O3含量的增加,催化剂表面L酸与B酸中心均有所增加,而孔径则持续变小,这使得催化反应呈现CAL转化率先增加后减少、目标产物COL选择性先稍有减小后有所增加的趋势.在Si/Al比为2时,催化剂具有最优的催化性能,优化反应条件下,CAL转化率达96%,目标产物COL选择性达90%.  相似文献   

7.
以金属硝酸盐为原料、碳酸钠为沉淀剂,采用共沉淀法制备了一系列Cu0.1Ce0.9-xAlxOy复合氧化物催化剂,并用低温氮气吸附/脱附、X-射线衍射(XRD)和氢-程序升温还原(H2-TPR)等对样品进行了表征,利用微反-色谱评价装置考察了催化剂对CO低温氧化反应的活性,研究了Al含量(x=0~0.3)和催化剂焙烧温度(350、500和650℃)对Cu0.1Ce0.9-xAxOy催化活性的影响。结果表明,随着催化剂中Al含量(x)的增加,Cu0.1Ce0.9-xAlxOy的催化活性先提高,至x=0.1时达到最大,之后又逐渐降低;当催化剂的焙烧温度为500℃时,Cu0.1Ce0.8Al0.1Oy的催化活性最大。Cu0.1Ce0.9-xAlxOy的催化活性与其CuO的还原性之间有较好的对应关系。  相似文献   

8.
纳米TiO2-SiO2复合氧化物的制备与性质   总被引:32,自引:0,他引:32  
采用溶胶-凝胶结合CO2超临界干燥方法制备了比表面积大、热稳定性好的纳米TiO2-SiO2复合氧化物.考察了原料组成和焙烧温度对复合氧化物比表面积、热稳定性和酸性的影响,通过加氢脱硫反应考察了该复合氧化物作为加氢精制催化剂载体的可行性.结果表明,采用该方法制备的复合氧化物为纳米颗粒,在n(Ti)/n(Si)=1时,其比表面积和孔容最大;与纯TiO2相比,引入SiO2明显提高了复合氧化物的热稳定性和晶型稳定性;以此复合氧化物为载体的加氢精制催化剂具有很好的低温脱硫活性,TiO2-SiO2复合氧化物载体的酸性特征影响了催化剂的加氢脱硫活性.  相似文献   

9.
采用溶胶-凝胶法制备了一系列不同Al2O3含量的SiO2-Al2O3复合氧化物,以该系列复合氧化物为载体,采用等体积浸渍法制备了Ni负载量15%(重量百分比)的催化剂,用于催化乙酰丙酸加氢制γ-戊内酯.采用N2物理吸附、X射线衍射(XRD)、H2程序升温还原(H2-TPR)、H2程序升温脱附(H2-TPD)、NH3程序升温脱附(NH3-TPD)和吡啶吸附红外(Py-IR)等手段对催化剂进行了表征.结果表明,不同载体催化剂的活性组分分散度及表面酸性质存在明显差异,显著影响了催化剂吸附、活化H2与C=O键的能力,进而影响了催化剂的乙酰丙酸加氢活性.其中,Ni/SiO2-Al2O3催化剂上的L酸中心能够促进C=O键的吸附、活化,与金属Ni上的H2吸附活性位协同作用,大大提高了乙酰丙酸加氢活性.因此,具有最多L酸中心和丰富H2吸附活性位的Ni/SiO2-8Al2O3催化剂表现出最高的乙酰丙酸加氢活性,在180℃、4 MPa氢气压力下,乙酰丙酸转化率达到90.5%,目标产物γ-戊内酯选择性为100%.  相似文献   

10.
邱安定  李恩霞  范以宁 《催化学报》2007,28(11):970-974
用微型催化反应装置结合吡啶吸附的红外光谱、NH3-程序升温脱附、热重、H2化学吸附和程序升温还原等物理化学手段研究了载体组成对负载型PtSn/ZSM-5催化剂上丙烷脱氢反应性能的影响.结果表明,负载型PtSn/ZSM-5催化剂对丙烷脱氢的催化性能与载体组成密切相关.随着ZSM-5载体中SiO2/Al2O3比的增加,催化剂表面的酸中心总量和强酸中心量逐渐减少.当SiO2/Al2O3摩尔比从45增至108时,催化剂对丙烷脱氢反应的催化活性提高,并且催化剂的积炭量下降.当SiO2/Al2O3摩尔比增至304时,Sn组分与载体ZSM-5之间的相互作用减弱,经H2还原后催化剂中Sn0物种所占的比例增加,导致催化剂H2化学吸附量和丙烷脱氢反应活性下降.  相似文献   

11.
刘蓉  王铁峰  刘畅  金涌 《催化学报》2013,34(12):2174-2182
以磷钨酸铯盐Cs2.5H0.5PW12O40(CsPW)为活性组分,负载到Nb2O5载体上,并用于甘油脱水制备丙烯醛的反应中.通过调节焙烧温度(400–700°C)以及活性组分负载量(5儃60 wt%),对催化剂酸性进行调节.CsPW负载量为20 wt%,500°C焙烧的CsPW/Nb2O5催化剂性能最佳,甘油转化率为96%,丙烯醛选择性为80%,反应10 h内没有失活现象,并且该催化剂具有良好的热稳定性,可通过烧炭进行再生.  相似文献   

12.
采用共沉淀法制备了一系列ZrxTixAl1-2xO2复合氧化物载体材料,考察了其作为裂解催化剂载体对航空煤油裂解反应的影响.?采用全自动吸附仪、X射线衍射、扫描电镜/能谱仪联用、NH3-程序升温脱附等手段对催化剂进行了表征.?结果表明,当ZrO2:TiO2:Al2O3质量比为1:1:3时催化剂具有最大的比表面积和孔容;具有最强的表面酸性和最集中的强酸中心密度,且具有良好的再生功能.?实验结果表明,载体ZrO2:TiO2:Al2O3质量比为1:1:3时催化剂上650?℃裂解产气量较热裂解提高了2.1倍,700?℃时提高1.4倍.?另外,该系列载体材料经1000?℃焙烧5?h后,所制得的催化剂几乎失去了催化活性.  相似文献   

13.
Sol-gel Cu//MgOSiO2 catalysts were prepared gelling tetraethoxysilane (TEOS), magnesium ethoxide and copper acetylacetonate at pH 3 and pH 9. The catalysts shown specific surface areas ca. 500 m2/g and 140 m2/g for pH 9 and pH 3 preparations respectively. Si(OH) and Si(OH)2 hydroxy groups were observed by MAS-RMN spectroscopy in both preparations. CO2-TPD and NH3-TPD desorption thermograms showed that acid and basic sites were formed on the catalysts surface. It has been found that the catalysts having the highest density of basic sites were the catalysts showing the highest activity for the CO oxidation. It is proposed that the catalytic activity depends of the relative Cu=1/Cu=2 stability given by the support acidity.  相似文献   

14.
采用等体积浸渍法制备系列Mn-Mo-W-O_x/堇青石和Mn-Mo-W-O_x/TiO_2催化剂,用于选择性催化还原NO.通过Mn、Mo、W 3种元素不同配比对催化剂配伍进行优化,确立Mn-Mo-W-O_x最佳配比.采用XRD、N_2-BET、PyIR、SEM以及XPS等表征分析催化剂的固相结构、比表面积、酸量、表面形貌和表面元素.结果表明:当Mn/Mo/W元素摩尔比为10∶0.5∶1,载体为TiO_2时,催化剂的催化性能最优.适量Mo掺入Mn-W-O_x催化剂可以增大其比表面积,提高催化剂表面L酸酸量以及Mn~(4+)离子浓度,从而有效提高了催化剂高温活性.载体替换为TiO_2时催化剂的比表面积和酸量明显提高,从而增强了催化剂的脱硝性能.  相似文献   

15.
A series of metal oxide catalysts for catalytic oxidative degradation of 2-chlorophenol (2-CP) and 4-chlorophenol (4-CP) were prepared, and the supported CuO catalysts were studied particularly. The supported CuO catalysts were characterized by XRD and NH3-TPD techniques, in which CuO/γ-Al2O3 exhibited high degradation activity. The addition of Na2O or K2O into CuO/γ-Al2O3 improved the oxidative degradation of CPs remarkably, in which Na2O was more efficient than K2O. Over CuO/γ-Al2O3-Na2O, CPs were completely converted and the liberation of the inorganic chloride from 2-CP or 4-CP reached 97% or 100% respectively at 30 ?C for 2 h. The supported CuO catalysts with good dispersion of CuO particles and less acid sites were favorable for the efficient oxidative degradation of CPs. In addition, the initial pH of the reaction solution was found to be an important factor which influenced the catalytic oxidative degradation of CPs and the initial pH of 11.2 and 9.8 was preferred for the oxidative degradation of 2-CP and 4-CP respectively over CuO/γ-Al2O3 catalyst.  相似文献   

16.
采用共沉淀法制备了Zr0.5Ti0.5O2载体材料,将其掺杂在CeO2-Al2O3 (CA)基催化剂中, 并对其催化活性进行了超临界裂解测试, 采用全自动吸附仪、X射线衍射(XRD)、透射电镜(TEM)、程序升温脱附(TPD)等方法对催化剂进行了表征. 实验结果表明, 催化剂能够明显降低裂解反应的温度, 600 ℃ CA基催化剂产气率是热裂解的2.8倍, 掺杂Zr0.5Ti0.5O2载体材料的CA基催化剂是热裂解的4.0倍, 650 ℃时, 掺杂Zr0.5Ti0.5O2载体材料的CA基催化剂热沉提高了0.55 MJ·kg-1. BET结果表明, 掺杂Zr0.5Ti0.5O2载体后催化剂出现双孔结构, 部分小孔的出现使得乙烯的选择性提高; NH3-TPD结果表明, 掺杂Zr0.5Ti0.5O2载体材料后, 催化剂强酸位的酸量增加了4.0倍,催化剂表现出更强的表面酸性和更集中的强酸酸中心密度, 有利于裂解多产烯烃.  相似文献   

17.
The surface properties of gallium oxide and tin dioxide supported on alumina or titania have been studied by adsorption microcalorimetry. The differential heats of adsorption of various pollutant adsorbates such as sulfur dioxide, nitrogen monoxide, nitrogen dioxide and also ammonia were measured on these catalytic surfaces. NH3, SO2, NO2 are strongly adsorbed while NO is only physisorbed. The supported Ga2O3 samples show a slight decrease in acidity as probed by ammonia adsorption, compared to alumina or titania. The addition of SnO2 decreases the number of strong acid sites but creates a few weak and medium strength acid sites on alumina and does not modify the acidity of titania. In all cases, the basicity, probed by SO2 adsorption, is very strongly affected by the deposition of Ga2O3 or SnO2. The differential heats of NO2 adsorption remain nearly constant on all samples. The heats of adsorption are discussed as a function of the coverage and of the amount of guest oxide. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

18.
The present paper reviews in detail the different studies now being conducted by our research team concerning the ultradeep hydrodesulfurization (HDS) of dibenzothiophene (DBT) derivatives over Mo/TiO2 and Mo/TiO2–Al2O3 catalysts. First, a detailed characterization of Mo/TiO2 (P-25 Degussa, 50 m2/g) catalysts prepared by equilibrium adsorption technique shows that Mo- species are highly and uniformly dispersed on the surface of titania up to 6.6 wt% MoO3 loading. Above this value, some aggregation of Mo occurs, leading to the formation of bulk MoO3. Below 6.6 wt% MoO3 loading, the Raman spectroscopy data of the calcined samples show that the supported Mo-species possess a highly distorted octahedral MoO6 structure. TiO2–Al2O3 composites were prepared by chemical vapor deposition (CVD) using TiCl4 as a precursor. Using several characterization techniques, we demonstrated that the support composite presents a high dispersion of TiO2 over -Al2O3 without forming precipitates up to ca. 11 wt% loading. Moreover, the textural properties of the composite support are comparable to those of alumina. Under the present sulfidation conditions (673 K, 5%H2S/95%H2), Mo-species supported on TiO2 are better sulfided than on alumina, as demonstrated using XPS. This can be attributed to the relatively lower interaction between Mo-species and titania. The state of sulfide species supported on the composite support can be considered as a transition state between TiO2 and Al2O3. However, at relatively higher TiO2 loadings (ca. 11 wt%), Mo/TiO2–Al2O3 catalysts exhibit sulfidability similar to that of Mo/TiO2. The HDS tests conducted in both the laboratory and in industry show that sulfide catalysts supported on TiO2–Al2O3 (ca. 11 wt% TiO2) are more active than those supported on TiO2 or Al2O3.  相似文献   

19.
Ti(C,N)-reinforced alumina-zirconia composites with different ratios of C to N in titanium carbonitride solid solutions, such as Ti(C0.3,N0.7) (C:N = 30:70) and Ti(C0.5,N0.5) (C:N = 50:50), were tested to improve their mechanical properties. Spark plasma sintering (SPS) with temperatures ranging from 1600 °C to 1675 °C and pressureless sintering (PS) with a higher temperature of 1720 °C were used to compare results. The following mechanical and physical properties were determined: Vickers hardness, Young’s modulus, apparent density, wear resistance, and fracture toughness. A composite with the addition of Ti(C0.5,N0.5)n nanopowder exhibited the highest Vickers hardness of over 19.0 GPa, and its fracture toughness was at 5.0 Mpa·m1/2. A composite with the Ti(C0.3,N0.7) phase was found to have lower values of Vickers hardness (by about 10%), friction coefficient, and specific wear rate of disc (Wsd) compared to the composite with the addition of Ti(C0.5,N0.5). The Vickers hardness values slightly decreased (from 5% to 10%) with increasing sintering temperature. The mechanical properties of the samples sintered using PS were lower than those of the samples that were spark plasma sintered. This research on alumina–zirconia composites with different ratios of C to N in titanium carbonitride solid solution Ti(C,N), sintered using an unconventional SPS method, reveals the effect of C/N ratios on improving mechanical properties of tested composites. X-ray analysis of the phase composition and an observation of the microstructure was carried out.  相似文献   

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